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Design strategy for air-stable organic semiconductors applicable to high-performance field-effect transistors

机译:适用于高性能场效应晶体管的空气稳定有机半导体的设计策略

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摘要

Electronic structure of air-stable, high-performance organic field-effect transistor (OFET) material, 2,7-dipheneyl[1]benzothieno[3,2-b] benzothiophene (DPh-BTBT), was discussed based on the molecular orbital calculations. It was suggested that the stability is originated from relatively low-lying HOMO level, despite the fact that the molecule contains highly π-extended aromatic core ([1]benzothieno[3,2-6] benzothiophene, BTBT) with four fused aromatic rings like naphthacene. This is rationalized by the consideration that the BTBT core is not isoelectronic with naphthacene but with chrysene, a cata-condensed phene with four benzene rings. It is well known that the acene-type compound is unstable among its structural isomers with the same number of benzene rings. Therefore, polycyclic aromatic compounds possessing the phene-substructure will be good candidates for stable organic semiconductors. Considering synthetic easiness, we suggest that the BTBT-substructure is the molecular structure of choice for developing air-stable organic semiconductors.
机译:基于分子轨道,讨论了空气稳定的高性能有机场效应晶体管(OFET)材料2,7-二苯甲酰基[1]苯并噻吩并[3,2-b]苯并噻吩(DPh-BTBT)的电子结构计算。有人提出,尽管该分子含有高度π-延伸的芳族核([1]苯并噻吩并[3,2-6]苯并噻吩,BTBT)和四个稠合的芳族环,但其稳定性源自较低的HOMO水平。像并四苯。考虑到BTBT核不是与并四苯等电子,而是与具有四个苯环的催化缩合苯-苯等电子,这是合理的。众所周知,并苯型化合物在具有相同苯环数的结构异构体中是不稳定的。因此,具有苯亚结构的多环芳族化合物将是稳定有机半导体的良好候选者。考虑到合成的难易程度,我们建议BTBT亚结构是开发对空气稳定的有机半导体的首选分子结构。

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